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Fatigue Crack Growth Behaviour in Friction Stir Welded Aluminium–Lithium Alloy Subjected to Biaxial Loads

机译:双轴载荷下搅拌摩擦焊接铝锂合金的疲劳裂纹扩展行为

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摘要

In this article, biaxial load fatigue crack growth tests are reported. Specimens were made of an advanced aluminium–lithium alloy AA2198-T8 joined by the friction stir welding process, capable of producing advanced integral metallic structures that can offer significant cost and weight savings over the current joining methods. Two material rolling directions are considered in relation to the welding and crack growth direction. Welding-induced initial distortion was measured before the experiment for better result interpretation. Test specimens are representative of two different weld orientations, that is longitudinal weld parallel to the material rolling direction and circumferential weld perpendicular to the material rolling direction for investigating the inherent material anisotropy of aluminium–lithium alloys. In all tests, the fatigue crack was initiated in the thermo-mechanical process zone of the weld and propagated parallel to the weld joint line. It is shown that the rolling direction of the selected aluminium alloy strongly affects the crack growth path. The specimens welded orthogonally to the rolling direction exhibit a shorter fatigue crack growth life than the specimens welded parallel to the rolling direction.
机译:在这篇文章中,报告了双轴载荷疲劳裂纹扩展测试。样品是由先进的铝-锂合金AA2198-T8通过摩擦搅拌焊接工艺制成的,能够生产先进的整体金属结构,与目前的连接方法相比,该金属结构可显着降低成本并减轻重量。考虑到与焊接和裂纹扩展方向有关的两个材料滚动方向。为了更好地解释结果,在实验之前测量了焊接引起的初始变形。试样代表两种不同的焊接方向,即用于研究铝锂合金固有材料各向异性的平行于材料轧制方向的纵向焊缝和垂直于材料轧制方向的周向焊缝。在所有测试中,疲劳裂纹都是在焊缝的热机械加工区中引发的,并平行于焊缝线传播。结果表明,所选铝合金的轧制方向强烈影响裂纹扩展路径。垂直于轧制方向焊接的试样比平行于轧制方向焊接的试样具有更短的疲劳裂纹扩展寿命。

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